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Performance Analysis of Thin Film CIGS Solar Cell at different values of thickness, bandgap and temperature through numerical simulation

机译:数值模拟不同厚度,带隙和温度不同值的薄膜CIGS太阳能电池的性能分析

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In this work, we present the performance analysis of the Cu(InGa)Se_2 (CIGS) thin-film solar cell by exploring the physics of varying CIGS thickness, bandgap, and the device temperature. The thickness optimization of the CIGS layer is important as this lowers the large-scale manufacturing cost and eliminates the issues associated with the handling of bulky conventional solar cells. The chalcopyrite CIGS material bandgap varies from leV to 1.7 eV depending upon the value of 'x' in the formula CuIn_(1-x)Ga_xSe_2. The bandgap can be engineered by varying the gallium (Ga) and indium (In) composition in CuIn_(1-x)Ga_xSe_2. The structure is numerically simulated using the SCAPS-1D code. We investigate how the photovoltaic parameters of the solar cell such as V_(oc), J_(sc), FF, and η are affected by varying the thickness of the absorber layer ranging from 1 m to 2μm and bandgap value from 1 eV to 1.7 eV. Further, we demonstrate how the performance of this chalcopyrite material based solar cell varies with the increase in the temperature ranging from 300- 360K. By detailed understanding, we anticipate that an efficient CIGS solar cell can be developed in the future.
机译:在这项工作中,我们通过探索不同的CIGS厚度,带隙和器件温度的物理学来介绍Cu(Inga)Se_2(CIGS)薄膜太阳能电池的性能分析。 CIGS层的厚度优化是重要的,因为这降低了大规模的制造成本,并消除了与庞大的常规太阳能电池处理相关的问题。取决于公式Cuin_(1-x)Ga_xSe_2中的“x”的值,Chalcyostite CIGS材料带隙根据“X”的值而变化。通过在Cuin_(1-x)Ga_xSe_2中改变镓(Ga)和铟(In)组合物来设计带隙。使用SCAPS-1D代码进行数值模拟结构。我们研究了太阳能电池的光伏参数,如V_(OC),J_(SC),FF和η,通过改变1米至2μm的吸收层的厚度和从1eV到1.7的带隙值的影响。 EV。此外,我们展示了基于核心基础的太阳能电池的性能如何随着300-360K的温度的增加而变化。通过详细了解,我们预计将来可以开发一个有效的CIGS太阳能电池。

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